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Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase

BACKGROUND: The unique S28 family of proteases is comprised of the carboxypeptidase PRCP and the aminopeptidase DPP7. The structural basis of the different substrate specificities of the two enzymes is not understood nor has the structure of the S28 fold been described. RESULTS: The experimentally p...

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Autores principales: Soisson, Stephen M, Patel, Sangita B, Abeywickrema, Pravien D, Byrne, Noel J, Diehl, Ronald E, Hall, Dawn L, Ford, Rachael E, Reid, John C, Rickert, Keith W, Shipman, Jennifer M, Sharma, Sujata, Lumb, Kevin J
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893456/
https://www.ncbi.nlm.nih.gov/pubmed/20540760
http://dx.doi.org/10.1186/1472-6807-10-16
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author Soisson, Stephen M
Patel, Sangita B
Abeywickrema, Pravien D
Byrne, Noel J
Diehl, Ronald E
Hall, Dawn L
Ford, Rachael E
Reid, John C
Rickert, Keith W
Shipman, Jennifer M
Sharma, Sujata
Lumb, Kevin J
author_facet Soisson, Stephen M
Patel, Sangita B
Abeywickrema, Pravien D
Byrne, Noel J
Diehl, Ronald E
Hall, Dawn L
Ford, Rachael E
Reid, John C
Rickert, Keith W
Shipman, Jennifer M
Sharma, Sujata
Lumb, Kevin J
author_sort Soisson, Stephen M
collection PubMed
description BACKGROUND: The unique S28 family of proteases is comprised of the carboxypeptidase PRCP and the aminopeptidase DPP7. The structural basis of the different substrate specificities of the two enzymes is not understood nor has the structure of the S28 fold been described. RESULTS: The experimentally phased 2.8 Å crystal structure is presented for human PRCP. PRCP contains an α/β hydrolase domain harboring the catalytic Asp-His-Ser triad and a novel helical structural domain that caps the active site. Structural comparisons with prolylendopeptidase and DPP4 identify the S1 proline binding site of PRCP. A structure-based alignment with the previously undescribed structure of DPP7 illuminates the mechanism of orthogonal substrate specificity of PRCP and DPP7. PRCP has an extended active-site cleft that can accommodate proline substrates with multiple N-terminal residues. In contrast, the substrate binding groove of DPP7 is occluded by a short amino-acid insertion unique to DPP7 that creates a truncated active site selective for dipeptidyl proteolysis of N-terminal substrates. CONCLUSION: The results define the structure of the S28 family of proteases, provide the structural basis of PRCP and DPP7 substrate specificity and enable the rational design of selective PRCP modulators.
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spelling pubmed-28934562010-06-30 Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase Soisson, Stephen M Patel, Sangita B Abeywickrema, Pravien D Byrne, Noel J Diehl, Ronald E Hall, Dawn L Ford, Rachael E Reid, John C Rickert, Keith W Shipman, Jennifer M Sharma, Sujata Lumb, Kevin J BMC Struct Biol Research article BACKGROUND: The unique S28 family of proteases is comprised of the carboxypeptidase PRCP and the aminopeptidase DPP7. The structural basis of the different substrate specificities of the two enzymes is not understood nor has the structure of the S28 fold been described. RESULTS: The experimentally phased 2.8 Å crystal structure is presented for human PRCP. PRCP contains an α/β hydrolase domain harboring the catalytic Asp-His-Ser triad and a novel helical structural domain that caps the active site. Structural comparisons with prolylendopeptidase and DPP4 identify the S1 proline binding site of PRCP. A structure-based alignment with the previously undescribed structure of DPP7 illuminates the mechanism of orthogonal substrate specificity of PRCP and DPP7. PRCP has an extended active-site cleft that can accommodate proline substrates with multiple N-terminal residues. In contrast, the substrate binding groove of DPP7 is occluded by a short amino-acid insertion unique to DPP7 that creates a truncated active site selective for dipeptidyl proteolysis of N-terminal substrates. CONCLUSION: The results define the structure of the S28 family of proteases, provide the structural basis of PRCP and DPP7 substrate specificity and enable the rational design of selective PRCP modulators. BioMed Central 2010-06-11 /pmc/articles/PMC2893456/ /pubmed/20540760 http://dx.doi.org/10.1186/1472-6807-10-16 Text en Copyright ©2010 Soisson et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research article
Soisson, Stephen M
Patel, Sangita B
Abeywickrema, Pravien D
Byrne, Noel J
Diehl, Ronald E
Hall, Dawn L
Ford, Rachael E
Reid, John C
Rickert, Keith W
Shipman, Jennifer M
Sharma, Sujata
Lumb, Kevin J
Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title_full Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title_fullStr Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title_full_unstemmed Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title_short Structural definition and substrate specificity of the S28 protease family: the crystal structure of human prolylcarboxypeptidase
title_sort structural definition and substrate specificity of the s28 protease family: the crystal structure of human prolylcarboxypeptidase
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2893456/
https://www.ncbi.nlm.nih.gov/pubmed/20540760
http://dx.doi.org/10.1186/1472-6807-10-16
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